WO2024103360A1 - Dispositif de cigarette électronique, procédé d'identification, procédé de commande, dispositif informatique et support de stockage - Google Patents

Dispositif de cigarette électronique, procédé d'identification, procédé de commande, dispositif informatique et support de stockage Download PDF

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Publication number
WO2024103360A1
WO2024103360A1 PCT/CN2022/132686 CN2022132686W WO2024103360A1 WO 2024103360 A1 WO2024103360 A1 WO 2024103360A1 CN 2022132686 W CN2022132686 W CN 2022132686W WO 2024103360 A1 WO2024103360 A1 WO 2024103360A1
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WIPO (PCT)
Prior art keywords
cigarette
state
intensity
vibration
signal
Prior art date
Application number
PCT/CN2022/132686
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English (en)
Chinese (zh)
Inventor
何建波
尹坤任
杜靖
梁峰
Original Assignee
思摩尔国际控股有限公司
深圳麦克韦尔科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 思摩尔国际控股有限公司, 深圳麦克韦尔科技有限公司 filed Critical 思摩尔国际控股有限公司
Priority to PCT/CN2022/132686 priority Critical patent/WO2024103360A1/fr
Publication of WO2024103360A1 publication Critical patent/WO2024103360A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring

Definitions

  • the present invention relates to the field of electronic smoking devices, and more specifically, to an electronic smoking device, an identification method, a control method, a computer device and a storage medium.
  • Cigarette recognition is to detect the status of cigarettes through sensors corresponding to various optical parameters, electrical parameters, magnetic parameters, posture parameters, temperature parameters, etc., such as whether the cigarette is inserted into the device, the type of cigarette, and even whether the cigarette has been smoked; the sensors involved in the currently disclosed cigarette recognition methods basically need to be installed in the chamber structure where the cigarette is located, with large position restrictions, and there is no related scene application based on vibration sensing to detect the status of cigarettes.
  • the technical problem to be solved by the present invention is to provide an electronic smoking device, an identification method, a control method, a computer device and a storage medium.
  • the technical solution adopted by the present invention to solve the technical problem is: to provide a cigarette status identification method for an electronic smoking device, wherein the cigarette can be plugged in and matched with the electronic smoking device, and the method comprises:
  • the processing result is compared with the preset parameter conditions to determine the current cigarette status of the cigarette.
  • the processing result includes the vibration duration of the vibration signal and the intensity mean and/or intensity peak of the vibration signal;
  • the step of processing the vibration signal to obtain a corresponding processing result includes:
  • the intensity mean value and/or the intensity peak value corresponding to the vibration signal are calculated according to the vibration signal.
  • the preset parameters include a preset first duration and a first signal strength
  • the step of comparing the processing result with the preset parameter conditions to determine the current cigarette state of the cigarette includes:
  • the cigarette state is determined to be the first state.
  • the first state is a cigarette inserted state and/or a cigarette removed state.
  • the preset parameters also include a preset second signal strength
  • the step of judging that the cigarette state is the first state when the intensity mean is greater than or equal to the first signal strength further includes:
  • the intensity peak is compared with the second signal intensity
  • the cigarette state is the cigarette insertion state
  • the preset parameters include a preset second duration, a first signal strength, and a third signal strength;
  • the step of comparing the processing result with the preset parameter conditions to determine the current cigarette state of the cigarette includes:
  • the cigarette state is determined to be the second state.
  • the second state is a cigarette smoking state.
  • the present invention also provides a heating control method for an electronic smoking device, wherein the electronic smoking device is used to heat an inserted cigarette, and the heating control method comprises:
  • the working state of the electronic smoking device is set according to the cigarette state.
  • the step of setting the working state of the electronic smoking device according to the cigarette state includes:
  • the cigarette state is a cigarette insertion state or a cigarette smoking state, setting the working state of the electronic smoking device to a heating state;
  • the working state of the electronic smoking device is set to a heating-stopped state.
  • the heating switch of the electronic smoking device is triggered to control the heating component to work and heat;
  • the heating component of the electronic smoking device is controlled to stop working.
  • the present invention also provides an electronic smoking device that can be plugged in and out of a cigarette, and is characterized in that the electronic smoking device includes a chamber for accommodating the cigarette, and a vibration sensing module for sensing the matching state between the cigarette and the chamber; the vibration sensing module includes a vibration sensing unit and a processing unit;
  • the vibration sensing unit is used to monitor and obtain the vibration signal of the electronic smoking device
  • the processing unit is used to process the vibration signal to obtain a corresponding processing result, and compare the processing result with a preset parameter condition to determine the current cigarette state of the cigarette.
  • the processing unit is further used to obtain the vibration duration corresponding to the vibration signal according to the vibration signal;
  • the intensity mean value and/or the intensity peak value corresponding to the vibration signal are calculated according to the vibration signal.
  • the processing unit is further used to compare the vibration duration with the first duration
  • the cigarette state is judged to be the first state
  • the cigarette state is determined to be the second state.
  • the processing unit is further configured to compare the intensity peak with the second signal intensity when the intensity mean is greater than or equal to the first signal intensity,
  • the cigarette state is a cigarette insertion state
  • the cigarette state is a cigarette-pulled state.
  • the electronic smoking device further comprises a heating control unit; the heating control unit is used to
  • the working state of the electronic smoking device is set according to the cigarette state.
  • the heating control unit is further used to set the working state of the electronic smoking device to a heatable state when the cigarette state is the cigarette insertion state or the cigarette smoking state;
  • the working state of the electronic smoking device is set to a heating stop state.
  • the heating control unit is further used to trigger the heating switch of the electronic smoking device to control the heating component to work and heat when the working state of the electronic smoking device is the heatable state;
  • the heating component of the electronic smoking device is controlled to stop working.
  • the present invention also provides a computer device, including a processor, a memory and a bus, wherein the memory stores machine-readable instructions executable by the processor.
  • the processor communicates with the memory via the bus, and the processor executes the machine-readable instructions to perform any of the above methods, or steps in any possible implementation of any of the methods.
  • the present invention also provides a computer-readable storage medium having machine-readable instructions stored thereon, and a processor runs the machine-readable instructions to execute any of the above methods, or steps in any possible implementation of any of the methods.
  • the implementation of the technical solution of the present invention has the following beneficial effects: monitoring and acquiring the vibration signal of the electronic cigarette device; processing the vibration signal to obtain the corresponding processing result; comparing the processing result with the preset parameter conditions to determine the current cigarette state. Acquiring and processing the vibration signal of the electronic cigarette device, comparing the processing result of the vibration signal with the preset parameter conditions, quickly determining the current cigarette state, more conveniently realizing the identification of the cigarette state, more conducive to the convenient use of the electronic cigarette device, and further intelligentizing the electronic cigarette device.
  • FIG1 is a flow chart of an embodiment of a method for identifying cigarette status of an electronic smoking device provided by the present invention
  • FIG2 is a vibration signal waveform diagram of a cigarette insertion state of a specific example of a cigarette state identification method for an electronic smoking device provided by the present invention
  • FIG. 3 is a vibration signal waveform diagram of a cigarette pulled out state according to a specific example of a cigarette state identification method for an electronic smoking device provided by the present invention
  • FIG4 is a vibration signal waveform diagram of a cigarette smoking state of a specific example of a cigarette state identification method for an electronic smoking device provided by the present invention.
  • FIG5 is a schematic structural diagram of a microwave-heated electronic smoking device used in an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a microwave-heated electronic smoking device used in another embodiment of the present invention.
  • the cigarette status identification method provided by the present invention for an electronic smoking device is to generate vibration by rubbing the cavity wall of the chamber when the cigarette is inserted into the electronic smoking device, generate vibration when the cigarette touches the bottom, or generate vibration by rubbing the cavity wall of the chamber when the cigarette is pulled out of the electronic smoking device, or generate vibration by atomization inside the cigarette when the cigarette is inhaled in the electronic smoking device, to form a vibration signal, process the vibration signal, and judge the current cigarette status according to the processed vibration signal.
  • the technical solution of the cigarette status identification method is not affected by the heating method of the electronic smoking device.
  • the electronic smoking device that implements the cigarette status identification method can be heated by sheet heating, needle heating, electromagnetic heating, microwave heating or other heating methods.
  • FIG. 1 it is a flow chart of an embodiment of a method for identifying cigarette status of an electronic smoking device provided by the present invention, wherein the cigarette can be plugged in and out to cooperate with the electronic smoking device.
  • the method specifically comprises the following steps:
  • vibrations when using a cigarette through an electronic smoking device, various vibrations will be generated, and the vibration signals generated in different ways are also different.
  • a cigarette when a cigarette is inserted into an electronic smoking device, friction with the inner wall of the chamber that holds the cigarette will generate vibration, and vibration will also be generated when the cigarette touches the bottom of the chamber; when the cigarette is pulled out of the electronic smoking device, friction with the inner wall of the chamber will generate vibration; when smoking a cigarette through an electronic smoking device, the friction between the aerosol generated by the internal atomization of the cigarette and the chamber will also generate relatively gentle vibrations. Therefore, when the electronic smoking device generates vibrations, the vibration signal of the electronic smoking device can be monitored and obtained in real time, so as to judge the status of the cigarette in real time based on the vibration signal. Among them, the obtained vibration signal is an electrical signal.
  • the vibration signal generated is also different, and the vibration signal includes but is not limited to information such as vibration frequency, duration, amplitude, vibration waveform, etc.
  • the information contained in the vibration signal is read in real time, and a processing result corresponding to the preset parameter conditions is obtained through a series of calculations. According to the processing result, the state of the cigarette can be quickly and conveniently determined.
  • the processing result includes the vibration duration of the vibration signal and the mean intensity and/or the peak intensity of the vibration signal.
  • step S2 it includes: obtaining the vibration duration corresponding to the vibration signal according to the vibration signal; and calculating the mean intensity and/or the peak intensity corresponding to the vibration signal according to the vibration signal.
  • the current corresponding vibration duration can be obtained according to the vibration signal; the current average value of the vibration intensity within the previous time range can be obtained by calculation; in addition, the vibration intensity peak value in the current vibration cycle, that is, the maximum value of the intensity in the current cycle can also be obtained by calculation. It can be understood that in other embodiments, the intensity peak value or the intensity average value can be calculated only after a part of the processing results meet the corresponding preset parameter conditions.
  • the processing result is compared with the preset parameter conditions in real time to determine the current state of the cigarette.
  • the judgment result can also be output for use.
  • the preset parameter conditions may vary due to differences in cigarette structure, cigarette size, electronic cigarette device structure or electronic cigarette device installation method.
  • the preset parameters include a preset first duration and a first signal strength.
  • step S3 it includes:
  • the current vibration duration is compared with the first duration. If the vibration duration is less than the first duration, the vibration signal is continuously monitored and acquired. If the vibration duration is greater than or equal to the first duration, the intensity average of the vibration signal of the current first duration range segment is selected and compared with the first signal intensity. If the intensity average is less than the first signal intensity, the vibration signal is continuously monitored and acquired. When the intensity average is greater than or equal to the first signal intensity, the cigarette state is determined to be the first state.
  • the cigarette state is determined to be the first state.
  • the first state is a cigarette insertion state and/or a cigarette removal state. Specifically, when inserting a cigarette or removing a cigarette, the cigarette will rub against the inner wall of the chamber, and the vibration signals generated meet the judgment conditions of the first state, so the first state can include a cigarette insertion state and a cigarette removal state. It can be understood that in some other embodiments, according to actual needs, the first state can also include only a cigarette insertion state or only a cigarette removal state.
  • the preset parameters also include a preset second signal strength.
  • step S313 it also includes: when the strength mean is greater than or equal to the first signal strength, the strength peak is compared with the second signal strength, and if there is a strength peak greater than or equal to the second signal strength within a set time after the current time, the cigarette state is judged to be a cigarette inserted state; if there is no strength peak greater than or equal to the second signal strength within a set time after the current time, the cigarette state is judged to be a cigarette removed state.
  • the second signal strength is greater than the first signal strength. Because in the final stage of inserting the cigarette, there is a vibration of the cigarette touching the bottom, and the peak intensity of the vibration is greater than or equal to the second signal strength; in addition, different insertion speeds will also lead to differences in the time of bottoming vibration. Therefore, it is only necessary to determine whether there is a vibration with a peak intensity greater than or equal to the second signal strength within a set time after this continuous segment when the duration of the vibration signal is greater than or equal to the first duration, and the duration of the continuous segment of the vibration signal with an intensity mean greater than or equal to the first signal strength is not less than the first duration. If so, it is determined to be a cigarette inserted state, and if not, it is determined to be a cigarette removed state. The specific value of this set time depends on actual needs.
  • FIG. 2 it is a vibration signal waveform diagram of a specific example of a cigarette insertion state.
  • t1 is the first duration in the preset parameters
  • Q1 is the first signal strength in the preset parameters
  • Q2 is the second signal strength in the preset parameters.
  • the vibration duration of this vibration signal is greater than t1, the duration of the continuous segment with an average intensity not less than Q1 reaches t1, and there is a vibration wave with an intensity peak of Q2 after this continuous segment, which belongs to the cigarette insertion state.
  • FIG. 3 is a vibration signal waveform diagram of a specific example of a cigarette pulled out state.
  • t1 is the first duration in the preset parameters
  • Q1 is the first signal strength in the preset parameters
  • Q2 is the second signal strength in the preset parameters.
  • the vibration duration of this vibration signal is greater than t1, and the duration of the continuous segment with an average intensity not less than Q1 reaches t1; but after this continuous segment, the vibration gradually disappears, and there is no vibration wave with an intensity peak of Q2 afterwards, which belongs to the cigarette pulled out state.
  • the preset parameters include a preset second duration, a first signal strength, and a third signal strength.
  • step S3 it includes:
  • the third signal strength is less than the first signal strength.
  • the current vibration duration is compared with the second duration. If the vibration duration is less than the second duration, continue to monitor and obtain the vibration signal; if the vibration duration is greater than or equal to the second duration, select the current mean value of the vibration signal strength of the continuous segment within the previous second duration range and compare it with the first signal strength. If the mean value of the strength is not less than the first signal strength, it does not belong to the second state, and continue to monitor and obtain the vibration signal; if the mean value of the strength is less than the first signal strength, then compare the mean value of the strength of this continuous segment with the third signal strength. If the mean value of the strength is greater than or equal to the third signal strength, determine that the cigarette state is the second state.
  • the second state is a cigarette smoking state.
  • FIG 4 is a vibration signal waveform diagram of a specific example of a cigarette smoking state.
  • t2 is the second duration in the preset parameters
  • Q1 is the first signal strength in the preset parameters
  • Q3 is the third signal strength in the preset parameters.
  • the vibration duration of this vibration signal is greater than t2, and the duration of the continuous segments with an average intensity less than Q1 and not less than Q3 reaches t2, which belongs to the cigarette smoking state.
  • the present invention also provides a heating control method for an electronic smoking device, which is not affected by the heating method of the electronic smoking device.
  • the electronic smoking device that implements the cigarette status identification method can be heated by sheet heating, needle heating, electromagnetic heating, microwave heating or other heating methods.
  • An embodiment of the heating control method for the electronic smoking device includes: obtaining the cigarette state of the cigarette using any of the above cigarette state recognition methods; and setting the working state of the electronic smoking device according to the cigarette state.
  • the current cigarette status can be quickly determined according to the vibration signal of the electronic cigarette device.
  • the electronic cigarette device can conveniently set the required working state according to the recognition result, which is conducive to further intelligentization of the electronic cigarette device.
  • the step of setting the working state of the electronic smoking device according to the cigarette status it may specifically include: when the cigarette status is a cigarette insertion state or a cigarette smoking state, setting the working state of the electronic smoking device to a heating state; when the cigarette status is a cigarette removal state, setting the working state of the electronic smoking device to a stopped heating state.
  • the electronic cigarette device after obtaining a cigarette insertion signal according to the vibration signal, the electronic cigarette device is set to a heatable state to prepare for heating the cigarette; when smoking a cigarette, the atomization substrate of the electronic cigarette device needs to be heated to generate aerosol, so when the cigarette is in the smoking state according to the vibration signal, the electronic cigarette device is set to a heatable state; after obtaining a cigarette removal signal according to the vibration signal, the electronic cigarette device is set to a stop heating state.
  • This method can be executed by a circuit board that controls heating in the electronic cigarette device, which is convenient for further intelligentizing the heating control function of the electronic cigarette device.
  • the heating switch of the electronic smoking device when the working state of the electronic smoking device is a heating state, the heating switch of the electronic smoking device is triggered to control the heating component to work and heat; when the working state of the electronic smoking device is a heating stop state, the heating component of the electronic smoking device is controlled to stop working.
  • the heating switch of the electronic cigarette device is triggered to control the heating component to heat.
  • the heating is performed by sheet heating, needle heating, electromagnetic heating, microwave heating or other heating methods.
  • the present invention also provides an electronic smoking device that can be plugged in and out of a cigarette.
  • the electronic smoking device includes a chamber for accommodating cigarettes, and a vibration sensing module for sensing the matching state of the cigarette and the chamber;
  • the vibration sensing module includes a vibration sensing unit and a processing unit.
  • the vibration sensing unit is used to monitor and obtain the vibration signal of the electronic smoking device;
  • the processing unit is used to process the vibration signal to obtain a corresponding processing result, and compare the processing result with a preset parameter condition to determine the current cigarette state.
  • the vibration sensing unit can monitor and obtain the vibration signal of the electronic cigarette device in real time, so as to judge the state of the cigarette in real time according to the vibration signal.
  • the processing unit then reads the information contained in the vibration signal in real time, including but not limited to vibration frequency, duration, amplitude, vibration waveform and other information; and then obtains the processing result corresponding to the preset parameter conditions through a series of calculations.
  • the processing unit compares the processing result with the preset parameter conditions in real time to determine the state of the current cigarette; in addition, the judgment result can also be output for use.
  • the preset parameter conditions may vary due to differences in cigarette structure, cigarette size, electronic cigarette device structure or electronic cigarette device installation method.
  • the processing unit is further configured to obtain a vibration duration corresponding to the vibration signal according to the vibration signal; and to calculate an intensity mean and/or intensity peak corresponding to the vibration signal according to the vibration signal.
  • the processing unit can obtain the current corresponding vibration duration according to the vibration signal; the current average value of the vibration intensity within the previous time range can be obtained by calculation; in addition, the peak value of the vibration intensity in the current vibration cycle, that is, the maximum value of the intensity in the current cycle can also be obtained by calculation. It can be understood that in other embodiments, the processing unit can also calculate the peak value of the intensity or the average value of the intensity only after determining that a part of the processing results meet the corresponding preset parameter conditions.
  • the processing unit is further used to compare the vibration duration with the first duration; when the vibration duration is greater than or equal to the first duration, compare the intensity mean with the first signal strength; when the intensity mean is greater than or equal to the first signal strength, determine that the cigarette state is the first state;
  • the processing unit compares the current vibration duration with the first duration. If the vibration duration is less than the first duration, the vibration sensing unit continues to monitor and obtain the vibration signal. If the vibration duration is greater than or equal to the first duration, the current mean value of the vibration signal in the previous first duration range is selected for comparison with the first signal strength. If the mean value of the strength is less than the first signal strength, the vibration sensing unit continues to monitor and obtain the vibration signal. When the mean value of the strength is greater than or equal to the first signal strength, the cigarette state is determined to be the first state.
  • the processing unit determines that the cigarette state is the first state.
  • the processing unit may also compare the current vibration duration with the second duration. If the vibration duration is less than the second duration, the vibration sensing unit continues to monitor and acquire the vibration signal. If the vibration duration is greater than or equal to the second duration, the intensity average of the vibration signal of the current continuous segment within the previous second duration range is selected for comparison with the first signal intensity. If the intensity average is not less than the first signal intensity, it does not belong to the second state, and the vibration sensing unit continues to monitor and acquire the vibration signal. If the intensity average is less than the first signal intensity, the intensity average of this continuous segment is compared with the third signal intensity. If the intensity average is greater than or equal to the third signal intensity, the processing unit determines that the cigarette state is the second state.
  • the processing unit is also used to compare the intensity peak with the second signal strength when the intensity mean is greater than or equal to the first signal strength. If there is an intensity peak greater than or equal to the second signal strength within a set time after the current time, the cigarette state is judged to be a cigarette inserted state; if there is no intensity peak greater than or equal to the second signal strength within a set time after the current time, the cigarette state is judged to be a cigarette removed state.
  • the vibration sensing unit continues to monitor and obtain the vibration signal, and then the processing unit determines whether there is a vibration with an intensity peak greater than or equal to the second signal intensity within a set time after this continuous segment. If so, it is judged as a cigarette insertion state, and if not, it is judged as a cigarette removal state.
  • the specific value of the set time depends on actual needs.
  • the electronic smoking device further includes a heating control unit, which is used to obtain the cigarette state of the cigarette and set the working state of the electronic smoking device according to the cigarette state.
  • the heating control unit may be a circuit board in the electronic smoking device that controls heating.
  • the heating control unit is also used to set the working state of the electronic smoking device to a heating state when the cigarette is in an inserted state or a smoked state; and to set the working state of the electronic smoking device to a stopped heating state when the cigarette is in a pulled-out state.
  • the heating control unit After the heating control unit obtains the signal of cigarette insertion from the processing unit, it sets the electronic cigarette device to a heatable state to prepare for heating the cigarette; when smoking the cigarette, it is necessary to heat the atomization matrix of the electronic cigarette device to atomize and produce aerosol, so after the heating control unit obtains the signal of cigarette inhalation from the processing unit, it sets the electronic cigarette device to a heatable state; after the heating control unit obtains the signal of cigarette removal from the processing unit, it is no longer necessary to continue heating and atomizing to produce aerosol, so the electronic cigarette device is set to a stop heating state.
  • the heating control unit is further used to trigger the heating switch of the electronic smoking device to control the heating component to work and heat when the working state of the electronic smoking device is a heating state; when the working state of the electronic smoking device is a heating stop state, control the heating component of the electronic smoking device to stop working.
  • the heating control unit can control a heating component in the electronic smoking device, and the heating component can be a sheet heating component, a needle heating component, an electromagnetic heating component, a microwave heating component, or a heating component using other heating methods.
  • FIG5 it is a schematic diagram of the structure of an embodiment of an electronic cigarette device using microwave heating, which specifically includes: a power supply 1 that provides power to drive the electronic cigarette device, a microwave generating device 4 that generates microwaves, a transmission structure 2 that conducts microwave signals, a resonant cavity 3 that allows microwaves to continuously oscillate to heat the atomized cigarette, a chamber 6 that accommodates the cigarette 7, and a vibration sensing module that senses the matching state between the cigarette 7 and the chamber 6.
  • a power supply 1 that provides power to drive the electronic cigarette device
  • a microwave generating device 4 that generates microwaves
  • a transmission structure 2 that conducts microwave signals
  • a resonant cavity 3 that allows microwaves to continuously oscillate to heat the atomized cigarette
  • a chamber 6 that accommodates the cigarette 7, and a vibration sensing module that senses the matching state between the cigarette 7 and the chamber 6.
  • the vibration sensing unit 5 of the vibration sensing module is set close to the resonant cavity 3; in some other embodiments, referring to FIG6, the vibration sensing unit 5 can also be set on other structures that are rigidly connected to the resonant cavity 3.
  • the vibration sensing unit 5 can use a vibration sensor to capture and sense the vibration signal in the electronic cigarette device, so as to achieve the recognition of the insertion, removal and suction actions of the cigarette.
  • the installation position is less restricted, and the cigarette status can be more conveniently recognized.
  • the processing unit of the vibration sensing module can be set on the main control circuit board, and the vibration signal generated by the vibration sensing unit 5 can be obtained through the signal transmission cable.
  • the present invention also provides a computer device, including a processor, a memory and a bus, wherein the memory stores machine-readable instructions executable by the processor.
  • the processor and the memory communicate through the bus, and the processor executes the machine-readable instructions to perform any of the above methods, or steps in any possible implementation of any of the methods.
  • the present invention also provides a computer-readable storage medium having machine-readable instructions stored thereon, and a processor runs the machine-readable instructions to execute any of the above methods, or steps in any possible implementation of any of the methods.
  • the embodiments provided by the present invention are only illustrative, and the writing order of each step in the method of the embodiment does not mean a strict execution order and does not constitute any limitation on the implementation process.
  • the order can be adjusted, merged and deleted according to actual needs.
  • the modules or sub-modules, units or sub-units in the device or system of the embodiment can be merged, divided and deleted according to actual needs.
  • the division of the unit is only a logical function division, and there may be other division methods in actual implementation.
  • multiple units or components can be combined or integrated into another device, or some features can be ignored or not executed.
  • the technicians may realize that all or part of the steps of the method described in the embodiments provided by the present invention may be directly implemented using electronic hardware or machine-readable instructions executable by a processor, or a combination of the two.
  • the machine-readable instructions may be stored in a memory, a CD-ROM, a register, a hard disk, a removable disk, a random access memory (RAM), a read-only memory (ROM), an electrically programmable ROM, an electrically erasable programmable ROM, or any other form of storage medium known in the technical field.

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Abstract

L'invention divulgue un dispositif de cigarette électronique, un procédé d'identification, un procédé de commande, un dispositif informatique et un support de stockage. Le dispositif de cigarette électronique peut être utilisé pour l'agencement d'une cigarette d'une manière insérable et amovible. Le procédé d'identification comprend : la surveillance et l'acquisition d'un signal de vibration d'un dispositif de cigarette électronique (S1) ; le traitement du signal de vibration pour obtenir un résultat de traitement correspondant (S2) ; et la comparaison du résultat de traitement avec une condition de paramètre prédéfinie pour déterminer l'état de cigarette d'une cigarette actuelle (S3). Le procédé d'identification permet de déterminer rapidement l'état de cigarette de la cigarette actuelle, d'identifier plus facilement l'état de cigarette, de mieux faciliter l'utilisation pratique du dispositif de cigarette électronique de rendre plus intelligent le dispositif de cigarette électronique.
PCT/CN2022/132686 2022-11-17 2022-11-17 Dispositif de cigarette électronique, procédé d'identification, procédé de commande, dispositif informatique et support de stockage WO2024103360A1 (fr)

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PCT/CN2022/132686 WO2024103360A1 (fr) 2022-11-17 2022-11-17 Dispositif de cigarette électronique, procédé d'identification, procédé de commande, dispositif informatique et support de stockage

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PCT/CN2022/132686 WO2024103360A1 (fr) 2022-11-17 2022-11-17 Dispositif de cigarette électronique, procédé d'identification, procédé de commande, dispositif informatique et support de stockage

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